Macroalgae and Light Availability Modulate the Distribution of the Temperate Coral Astrangia poculata

IF 1.8 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Taylor Lindsay, Willow Dunster, Carlos Prada
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引用次数: 0

Abstract

The temperate coral Astrangia poculata is rapidly becoming a convenient system for studying symbiosis, microbiome, and thermal resilience. However, the ecology of this species is poorly understood. A. poculata is a temperate coral that employs facultative symbiosis to survive in cold, nutrient-rich New England waters. The two ecotypes—symbiotic mixotrophic and aposymbiotic heterotrophic colonies—exist in the same environment, but their abundance changes across depth gradients. We conducted quadrat sampling along a depth gradient to quantify the density of A. poculata at Fort Wetherill State Park, RI, and determine the correlates of ecotype distribution. Further, we quantified light availability and macroalgal cover as possible ecological drivers of abundance. Symbiotic and aposymbiotic A. poculata exhibited a bell curve distribution along the depth gradient. In shallow environments, where both light and macroalgae are abundant, macroalgal cover was inversely related to coral density, implying a negative effect on coral abundance. In deeper environments where macroalgae were not present, coral cover was higher. However, light limitation and depth may limit A. poculata abundance, with symbiotic colonies growing no deeper than 12.5 m and only aposymbiotic colonies present from 13 to 22 m. As macroalgae abundance and turbidity increase with more nutrient loading in coastal marine ecosystems, monitoring their effect on the distribution and density of A. poculata is critical to conserve this monotypic species.

大型藻类和光效调节温带珊瑚的分布
温带珊瑚aststrangia populata正迅速成为研究共生、微生物组和热恢复能力的一个方便的系统。然而,人们对这个物种的生态学知之甚少。a . poculata是一种温带珊瑚,它采用兼性共生在寒冷、营养丰富的新英格兰水域生存。共生混合营养和非共生异养两种生态类型存在于同一环境中,但其丰度在深度梯度上发生变化。在美国罗德岛Fort Wetherill州立公园,我们采用深度梯度样方取样,量化了种群密度,并确定了生态型分布的相关因素。此外,我们量化了光可用性和大藻覆盖作为可能的生态驱动因素。共生性和非共生性猪猪沿深度梯度呈钟形曲线分布。在光藻和大藻都很丰富的浅水环境中,大藻覆盖与珊瑚密度呈负相关,这意味着对珊瑚丰度有负面影响。在不存在大型藻类的较深环境中,珊瑚覆盖率较高。然而,光照和深度的限制可能会限制种群的丰度,共生菌落的生长深度不超过12.5 m, 13 - 22 m只有非共生菌落。随着滨海海洋生态系统中巨藻的丰度和浊度随着养分负荷的增加而增加,监测其对种群分布和密度的影响对保护这一单型物种至关重要。
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来源期刊
Marine Ecology-An Evolutionary Perspective
Marine Ecology-An Evolutionary Perspective 生物-海洋与淡水生物学
CiteScore
2.70
自引率
0.00%
发文量
37
审稿时长
>12 weeks
期刊介绍: Marine Ecology publishes original contributions on the structure and dynamics of marine benthic and pelagic ecosystems, communities and populations, and on the critical links between ecology and the evolution of marine organisms. The journal prioritizes contributions elucidating fundamental aspects of species interaction and adaptation to the environment through integration of information from various organizational levels (molecules to ecosystems) and different disciplines (molecular biology, genetics, biochemistry, physiology, marine biology, natural history, geography, oceanography, palaeontology and modelling) as viewed from an ecological perspective. The journal also focuses on population genetic processes, evolution of life histories, morphological traits and behaviour, historical ecology and biogeography, macro-ecology and seascape ecology, palaeo-ecological reconstruction, and ecological changes due to introduction of new biota, human pressure or environmental change. Most applied marine science, including fisheries biology, aquaculture, natural-products chemistry, toxicology, and local pollution studies lie outside the scope of the journal. Papers should address ecological questions that would be of interest to a worldwide readership of ecologists; papers of mostly local interest, including descriptions of flora and fauna, taxonomic descriptions, and range extensions will not be considered.
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